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Ecophysiology of antioxidation and the xanthophyll cycle in plants.

机译:植物抗氧化的生态生理和叶黄素循环。

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摘要

The research described in this dissertation examines the ecophysiology of two key defense mechanisms against oxidative stress, i.e. xanthophyll cycle-dependent energy dissipation and the detoxification of reactive oxygen species. I conducted a series of experiments wherein a range of plant species acclimated to environmental stresses in the field, or in the greenhouse, were characterized.; Of the constituent carotenoids, the xanthophyll cycle exhibited the most pronounced positive response to growth light intensity in nineteen plant species acclimated to different irradiances in a subtropical rainforest. High light-acclimated leaves also possessed several-fold higher levels of ascorbate than low light-acclimated leaves.; The response of photosynthetic electron transport and energy dissipation to sunflecks in Alocasia brisbanensis (F. M. Bailey) Domin beneath the canopy of a subtropical rainforest were monitored. Antheraxanthin and zeaxanthin were formed during the first sunfleck and retained throughout the day while the level of energy dissipation appeared to be modulated by the magnitude of the trans-thylakoid membrane proton gradient.; Patterns of acclimation of photosynthesis, energy dissipation, and antioxidation in Cucurbita pepo L. and Vinca major L. acclimated to four irradiances in the field indicated that, like energy dissipation, Mehler-peroxidase pathway capacity (a system of antioxidant enzymes and metabolites that detoxifies superoxide that results from oxygen photoreduction) appeared to respond to the degree of excess light absorption.; Seasonal acclimation of energy dissipation and antioxidation was studied in three populations of Mahonia repens (Lindley) Don growing in the foothills of the Rocky Mountains. In the summer plants acclimated to increased irradiance with increased energy dissipation as well increased Mehler-peroxidase pathway capacity. A strong interaction between the light environment and seasonally colder temperatures complicated the winter-acclimation of these processes.; Limiting nitrogen availability in Spinacia oleracea L. led to a strong and coordinated decrease in photosynthetic capacity, leaf pigment content, and Mehler-peroxidase pathway capacity and resulted in enhanced levels of energy dissipation.; Though enhanced levels of energy dissipation were consistently observed in plants acclimated to environmental stresses, no single response of all photoprotective processes to environmental stress emerged from these studies. I postulate that this is so because stresses such as high irradiance, low temperature, and limiting nitrogen availability can differ in magnitude and the timing of their occurrence, and because environmental stresses perturb whole plant source/sink relationships in different ways.
机译:本论文描述的研究考察了抗氧化应激的两个关键防御机制的生态生理学,即叶黄素循环依赖性能量耗散和活性氧的解毒作用。我进行了一系列实验,对在田地或温室中适应环境胁迫的一系列植物进行了表征。在组成类胡萝卜素中,叶绿素循环在适应亚热带雨林中不同辐照度的19种植物中对生长光强度表现出最明显的正响应。高光适应性叶片的抗坏血酸水平也比低光适应性叶片高几倍。监测了亚热带雨林冠层下的海芋(B.banley)Domin的光合电子传递和能量耗散对日晒斑的响应。在第一个日晒期间形成了花药黄嘌呤和玉米黄质,并在一整天保持不变,而能量消耗的水平似乎受到跨类囊体膜质子梯度大小的调节。西葫芦和长春蔓主要光合作用的光合作用,能量耗散和抗氧化的适应模式适应了该领域的四个辐照,这表明,与能量耗散一样,迈勒-过氧化物酶途径能力(一种能解毒的抗氧化酶和代谢产物系统)氧光还原产生的超氧化物)似乎对过量的光吸收程度有反应。研究了落基山山麓上生长的三个大不列颠(Lindley)Don种群的能量耗散和抗氧化的季节适应性。在夏季,植物适应于增加辐照度,增加能量消散以及提高Mehler-过氧化物酶途径能力。光照环境和季节性较低温度之间的强烈相互作用使这些过程的冬季适应变得复杂。菠菜中氮的有效利用受到限制,导致光合能力,叶片色素含量和迈勒-过氧化物酶途径能力强烈而协调地下降,并导致能量耗散水平提高。尽管在适应环境胁迫的植物中始终观察到能量耗散水平的提高,但这些研究并未发现所有光保护过程对环境胁迫的单一反应。我推测是这样,因为诸如高辐照度,低温和有限的氮利用率等胁迫可能在大小和发生时间上有所不同,并且由于环境胁迫以不同的方式扰乱了整个植物的源/库关系。

著录项

  • 作者

    Logan, Barry Andrew.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Biology Plant Physiology.; Chemistry Biochemistry.; Biology Ecology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;生物化学;生态学(生物生态学);
  • 关键词

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